In situ click chemistry generation of cyclooxygenase-2 inhibitors
Получение ингибиторов циклооксигеназы-2 с использованием клик-химии in situ
2017-02-09
SCID: 54.1/bhvdytqb
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anti-inflammatory activitycyclooxygenase-2 inhibitorsin situ click chemistrykinetic target-guided synthesisselective enzyme inhibitors
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Abstract (AI)
Cyclooxygenase-2 isozyme is a promising anti-inflammatory drug target, and overexpression of this enzyme is also associated with several cancers and neurodegenerative diseases. The amino-acid sequence and structural similarity between inducible cyclooxygenase-2 and housekeeping cyclooxygenase-1 isoforms present a significant challenge to design selective cyclooxygenase-2 inhibitors. Herein, we describe the use of the cyclooxygenase-2 active site as a reaction vessel for the in situ generation of its own highly specific inhibitors. Multi-component competitive-binding studies confirmed that the cyclooxygenase-2 isozyme can judiciously select most appropriate chemical building blocks from a pool of chemicals to build its own highly potent inhibitor. Herein, with the use of kinetic target-guided synthesis, also termed as in situ click chemistry, we describe the discovery of two highly potent and selective cyclooxygenase-2 isozyme inhibitors. The in vivo anti-inflammatory activity of these two novel small molecules is significantly higher than that of widely used selective cyclooxygenase-2 inhibitors.Traditional inflammation and pain relief drugs target both cyclooxygenase 1 and 2 (COX-1 and COX-2), causing severe side effects. Here, the authors use in situ click chemistry to develop COX-2 specific inhibitors with high in vivo anti-inflammatory activity.
Key Findings
1
Kinetic target-guided synthesis, or in situ click chemistry, led to the discovery of two highly potent and selective COX-2 inhibitors.
2
Multi-component competitive-binding studies showed that COX-2 selectively assembles suitable chemical building blocks from a mixture of compounds.
3
The COX-2 active site was used as a reaction vessel for in situ generation of highly specific inhibitors.
4
The approach addresses the challenge of distinguishing COX-2 from the structurally similar housekeeping isoform COX-1.
5
The two newly identified small molecules demonstrated significantly greater in vivo anti-inflammatory activity than widely used selective COX-2 inhibitors.
Research Object
cyclooxygenase-2 isozyme and its active site
Research Subject
in situ generation and selective inhibitory activity of highly potent COX-2 inhibitors, including their in vivo anti-inflammatory efficacy
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2017-02-09
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